An electrical connector comprises a casing and a connector module. The casing has a retaining member. The connector module has an electrically insulating contact carrier and a plurality of electrically conductive contacts. The connector module is at least partially surrounded by the casing and is retained at the casing by the retaining member. The retaining member exerts a retaining force on the connector module in a direction along a mating direction of the electrical connector. The connector module is removable from the retaining member in a direction transverse to the mating direction.
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14. A method for assembling an electronic module, comprising:
providing a retainer shell and a circuit carrier, the retainer shell having a retaining member, the circuit carrier including a substrate having a connector module disposed on and connected to the substrate;
inserting the circuit carrier into the retainer shell in a direction transverse to a mating direction of the connector module, the connector module removably engaging the retaining member and held by the retaining member along the mating direction; and
mounting a cover shell on the retainer shell in a direction along the mating direction, the retainer shell and the cover shell forming a casing surrounding the substrate.
16. An electrical connector, comprising:
a casing including a retainer shell having a retaining member and a separate cover shell; and
a connector module having an electrically insulating contact carrier and a plurality of electrically conductive contacts, the connector module at least partially surrounded by the casing and retained at the casing by the retaining member, the retaining member exerting a retaining force on the connector module in a direction along a mating direction of the electrical connector and the connector module removable from the retaining member in a direction transverse to the mating direction, the cover shell of the casing at least partially covers the connector module and has a receiving passageway receiving the connector module, the receiving passageway guiding a mating connector mating with the electrical connector.
13. An electronic module, comprising:
a casing having a retaining member including a retaining projection and a retaining groove; and
a circuit carrier having a substrate with a connector module disposed on and connected to the substrate, the connector module having an electrically insulating contact carrier, a stop collar extending at least in sections around the contact carrier and at least partially defining a retaining recess, and a plurality of electrically conductive contacts, the circuit carrier at least partially surrounded by the casing and retained at the casing by the retaining member, the retaining projection of the retaining member engaging the retaining recess and the retaining groove of the retaining member engaging the stop collar, the circuit carrier removable from the retaining member in a direction transverse to a mating direction of the connector module.
1. An electrical connector, comprising:
a casing having a retaining member including a retaining projection and a retaining groove; and
a connector module having an electrically insulating contact carrier, a stop collar extending at least in sections around the contact carrier and at least partially defining a retaining recess, and a plurality of electrically conductive contacts, the connector module at least partially surrounded by the casing and retained at the casing by the retaining member, the retaining projection of the retaining member engaging the retaining recess and the retaining groove of the retaining member engaging the stop collar, the retaining member exerting a retaining force on the connector module in a direction along a mating direction of the electrical connector and the connector module removable from the retaining member in a direction transverse to the mating direction.
17. An electrical connector, comprising:
a casing having a retaining member with a retaining projection; and
a connector module having an electrically insulating contact carrier and a plurality of electrically conductive contacts, the connector module at least partially surrounded by the casing and retained at the casing by the retaining member, the retaining member exerting a retaining force on the connector module in a direction along a mating direction of the electrical connector and the connector module removable from the retaining member in a direction transverse to the mating direction, the retaining projection of the retaining member engages a retaining recess of the connector module that is a guiding groove receiving the retaining projection, the retaining projection forms a partition wall electrically insulating the contacts of the connector module from a plurality of contacts of an adjacent connector module of the electrical connector.
2. The electrical connector of
3. The electrical connector of
4. The electrical connector of
5. The electrical connector of
6. The electrical connector of
7. The electrical connector of
8. The electrical connector of
9. The electrical connector of
10. The electrical connector of
11. The electrical connector of
12. The electrical connector of
15. The electronic module of
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This application is a continuation of PCT International Application No. PCT/EP2016/052540, filed on Feb. 5, 2016, which claims priority under 35 U.S.C. § 119(a)-(d) to European Patent Application No. 15305177.6, filed on Feb. 6, 2015.
The present invention relates to an electrical connector and, more particularly, to an electrical connector having a casing and at least one connector module.
Electrical connectors are critical to the performance of electronic devices and components in all fields of application. Specifically for aerospace, defense, and marine applications, electrical connectors often are high-quality precision components; if only a part of the connector is defective or outdated, it is cost-prohibitive to discard or replace the entire connector. Known modular electrical connectors thus have a casing and a connector module inserted therein. This arrangement permits maintenance or repair by exchanging the defective or no longer desired connector module for another one that is functioning properly or of another type. However, in known modular electrical connectors, disassembly is either cumbersome or impossible.
A known electronic module, for example for an in-flight entertainment system in an aeronautical application, is shown in
The circuit carrier 201, as shown in
The circuit carrier 201 is shown in its final mounted position firmly mounted in the retainer shell 206 in
In a next assembly step shown in
The known electronic module 200 is shown in a final assembled state in
Further, in international patent application WO 2011/160971, it is known to provide at the receiving passage 214 latching recesses that are accessible from the outside of each receiving passage 214 in order to allow for the latch 216 to be actuated. However, as each connector module 204 has its own latch 216, actuating the latch 216 of each connector module 204 at the same time and simultaneously pulling back the circuit carrier 201 is difficult and requires specific tools.
An electrical connector according to the invention comprises a casing and a connector module. The casing has a retaining member. The connector module has an electrically insulating contact carrier and a plurality of electrically conductive contacts. The connector module is at least partially surrounded by the casing and is retained at the casing by the retaining member. The retaining member exerts a retaining force on the connector module in a direction along a mating direction of the electrical connector. The connector module is removable from the retaining member in a direction transverse to the mating direction.
The invention will now be described by way of example with reference to the accompanying figures, of which:
Exemplary embodiments of the present invention will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to like elements. The present invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the concept of the disclosure to those skilled in the art.
A circuit carrier 101 according to the invention is shown in
The connector modules 104, as shown in
The circuit carrier 101 is shown during assembly in a retainer shell 106 in
The circuit carrier 101 is mounted within the retainer shell 106 in a mounting direction 112 which extends perpendicular to the mating direction 107. The retainer shell 106, as shown in
Each of the retaining projections 128, as shown in
According to the present invention, inserting the circuit carrier 101 into the retainer shell 106 does not involve any latching, locking, or irreversible connecting steps, so that the circuit carrier 101 can easily be removed in a direction opposite to the mounting direction 112 when necessary. As shown in
The circuit carrier 101 is shown in a final mounted position within the retainer shell 106 in
An electronic module 100 including the circuit carrier 101 and the casing 105 is shown in a final assembled state in
As shown in
Duval, Frederic, Corriou, Thierry, Houvenaghel, Fabien, Grab, Benjamin Michael
Patent | Priority | Assignee | Title |
10461481, | Nov 17 2017 | JTEKT Corporation | Electronic control unit for controlling rotary electric machine |
Patent | Priority | Assignee | Title |
5920459, | Feb 04 1997 | The Whitaker Corporation | Electrical connector housing for circuit board assembly |
7722402, | Oct 16 2006 | CommScope EMEA Limited; CommScope Technologies LLC | Panel interface module which provides electrical connectivity between panel and shielded jacks |
8734169, | Sep 11 2012 | Apple Inc | Method of locating SMT connector with SMT cap feature |
9277658, | Aug 23 2013 | Mitsubishi Electric Corporation | Electronic controller and method of manufacturing the electronic controller |
20020072276, | |||
CN101529665, | |||
CN103682702, | |||
JP5575314, | |||
WO2008091253, | |||
WO2011160971, |
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Jul 12 2017 | GRAB, BENJAMIN MICHAEL | Connecteurs Electriques Deutsch | CORRECTIVE ASSIGNMENT TO CORRECT THE FIRST INVENTOR S NAME PREVIOUSLY RECORDED ON REEL 043282 FRAME 0212 ASSIGNOR S HEREBY CONFIRMS THE ASSIGNMENT | 047957 | /0373 | |
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Jul 12 2017 | CORRIOU, THIERRY | Connecteurs Electriques Deutsch | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 043282 | /0212 | |
Jul 12 2017 | DUVAL, FREDERIC | Connecteurs Electriques Deutsch | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 043282 | /0212 | |
Jul 12 2017 | GRAB, BENJAMIN MICHAEL | Connecteurs Electriques Deutsch | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 043282 | /0212 | |
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